304 stainless steel CNC milling thread spray needle

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January 15, 2026
Category Connection: Stainless Steel CNC Parts
Brief: In this video, we demonstrate the precision CNC machining process for medical-grade 316L stainless steel blowing needles with deep holes and side holes. You'll see how these long-shaft components are manufactured to ensure superior airflow control, biocompatibility, and durability for critical surgical and diagnostic applications.
Related Product Features:
  • Precision CNC machining ensures high accuracy and consistency for complex geometries.
  • Made from medical-grade 316L stainless steel for exceptional corrosion resistance and biocompatibility.
  • Long shaft blow needle with side hole design optimizes airflow control and surgical stability.
  • Customizable design features adaptable to unique medical device requirements and tolerance specifications.
  • Durable construction resists wear, corrosion, and repeated sterilization cycles.
  • Strict tolerance control with adherence to precision standards such as ±0.01 mm.
  • Optional surface finishes include polishing, passivation, or electroplating.
  • Complies with medical industry standards including ISO 13485 for reliability.
FAQs:
  • What material is used for these medical blowing needles?
    They are made from medical-grade 316L stainless steel, which provides excellent corrosion resistance, biocompatibility, and durability for healthcare applications.
  • Can the design of the blowing needle be customized?
    Yes, the design is fully customizable, including the long shaft, blow needle configuration, and side hole placement, with adaptable tolerance specifications to meet unique medical device requirements.
  • What are the primary applications for these CNC machined medical components?
    They are used in surgical instruments for minimally invasive and endoscopic procedures, diagnostic equipment for medical gas delivery, custom medical devices in respiratory therapy or orthopedics, and laboratory tools for precision fluid handling.
  • How does the side hole design benefit medical procedures?
    The side hole design improves airflow control, enhances stability during surgical operations, and increases efficiency in medical gas delivery and sampling systems.
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